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Topological surface states in strained Dirac semimetal thin films

  • Pablo Villar Arribi
  • , Jian Xin Zhu
  • , Timo Schumann
  • , Susanne Stemmer
  • , Anton A. Burkov
  • , Olle Heinonen

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

We computationally study the Fermi arc states in a Dirac semimetal, both in a semi-infinite slab and in the thin-film limit. We use Cd3As2 as a model system, and include perturbations that break the C4 symmetry and inversion symmetry while mirror symmetries remain. The surface states are protected by the mirror symmetries present in the bulk states and thus survive these perturbations. The Fermi arc states persist down to very thin films, thinner than presently measured experimentally, but are affected by breaking the symmetry of the Hamiltonian. Recent experimental observations of transport in Cd3As2 films strongly suggest transport by surface states. Our findings are consistent with those observations in that we show that Fermi arc states can survive to rather thin films, and our results also suggest that symmetry-breaking terms that preserve the Fermi arc states nevertheless can have a profound effect in the thin film limit.
Original languageEnglish
JournalPhysical Review B - Condensed Matter and Materials Physics
Volume102
Issue number15
DOIs
StatePublished - Oct 26 2020

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